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In Silico Analysis of Microarray-Based Gene Expression Profiles Predicts Tumor Cell Response to Withanolides

机译:基于微阵列的基因表达谱的计算机模拟分析预测肿瘤细胞对Withanolides的反应

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Withania somnifera (L.) Dunal (Indian ginseng, winter cherry, Solanaceae) is widely used in traditional medicine. Roots are either chewed or used to prepare beverages (aqueous decocts). The major secondary metabolites of Withania somnifera are the withanolides, which are C-28-steroidal lactone triterpenoids. Withania somnifera extracts exert chemopreventive and anticancer activities in vitro and in vivo. The aims of the present in silico study were, firstly, to investigate whether tumor cells develop cross-resistance between standard anticancer drugs and withanolides and, secondly, to elucidate the molecular determinants of sensitivity and resistance of tumor cells towards withanolides. Using IC50 concentrations of eight different withanolides (withaferin A, withaferin A diacetate, 3-azerininylwithaferin A, withafastuosin D diacetate, 4-B-hydroxy-withanolide E, isowithanololide E, withafastuosin E, and withaperuvin) and 19 established anticancer drugs, we analyzed the cross-resistance profile of 60 tumor cell lines. The cell lines revealed cross-resistance between the eight withanolides. Consistent cross-resistance between withanolides and nitrosoureas (carmustin, lomustin, and semimustin) was also observed. Then, we performed transcriptomic microarray-based COMPARE and hierarchical cluster analyses of mRNA expression to identify mRNA expression profiles predicting sensitivity or resistance towards withanolides. Genes from diverse functional groups were significantly associated with response of tumor cells to withaferin A diacetate, e.g. genes functioning in DNA damage and repair, stress response, cell growth regulation, extracellular matrix components, cell adhesion and cell migration, constituents of the ribosome, cytoskeletal organization and regulation, signal transduction, transcription factors, and others.
机译:Withania somnifera(L.)Dunal(印度参,冬樱花,茄科)被广泛用于传统医学中。根可被咀嚼或用于制备饮料(水煎)。睡茄的主要次生代谢产物是茄醇,其为C-28-甾体内酯三萜。 Withania somnifera提取物在体内和体外均具有化学预防和抗癌活性。本计算机研究的目的是,首先,研究肿瘤细胞是否在标准抗癌药物和withanolides之间发展出交叉耐药性,其次,阐明肿瘤细胞对withanolides的敏感性和耐药性的分子决定因素。使用IC 50 浓度的八种不同的山梨醇化物(山a素A,山a豆素A二乙酸盐,3-az丙啶基山a豆素A,山梨糖醇溶酶D二乙酸盐,4-B-羟基山梨糖醇E,异山梨醇内酯E,山梨糖苷酶E和山茱uv素)和19种已建立的抗癌药物,我们分析了60种肿瘤细胞系的交叉耐药性。细胞系显示出八种醇化物之间的交叉抗性。还观察到了withanolides和亚硝基脲(carmustin,lomustin和Semimustin)之间的一致交叉电阻。然后,我们进行了基于转录组微阵列的COMPARE和mRNA表达的层次聚类分析,以鉴定可预测对withanolides的敏感性或抗性的mRNA表达谱。来自不同功能组的基因与肿瘤细胞对Aferin A diacetate,例如A.基因在DNA损伤和修复,应激反应,细胞生长调节,细胞外基质成分,细胞粘附和细胞迁移,核糖体的组成,细胞骨架的组织和调节,信号转导,转录因子等中起作用。

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